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Profile of the graduate student population in U.S. medical schools.

The Association of American Medical Colleges (AAMC) sponsored surveys of accredited U.S. medical schools in 1994-95 and in 1995-96 to gather enough data to determine an accurate profile of the population of students enrolled in and/or graduated from biomedical PhD and MD-PhD programs at these institutions. Previously collected data on the graduate student population at medical schools often did not distinguish between PhD students at the medical school and graduate students in other parts of the university. The AAMC surveys defined a medical school PhD- or MD-PhD-trained student as one whose major professor holds his or her primary appointment in a department of the medical school. The data were the result of census-taking by the responding schools on October 1, 1994, and October 1, 1995. There were 81 responses to each of the two surveys. Overall, 104 medical schools supplied data in either one or both of the survey years. When the data are extrapolated from the sample to the total population of 122 medical schools that award graduate degrees, a number of interesting estimates emerge. (1) When compared with the 1995 data for 18 biomedically-related biological science disciplines from the National Research Council's Survey of Earned Doctorates, the AAMC survey indicates that approximately 60% of the 4,000 PhDs awarded were earned by students studying at U.S. medical schools. (2) The total enrollment of PhD students in U.S. medical schools is approximately 18,600, a number that is about 25-30% of the number of medical students currently enrolled at all accredited U.S. medical schools. In some institutions, the number of graduate students rivals the number of medical students. (3) PhD students are enrolled in a wide variety of programs bearing titles reflective of a trend toward "interdisciplinary" rather than "departmental" degrees. (4) At a given time, the number of students supported by National Institutes of Health (NIH) research grants is nearly twice that provided for by NIH traineeships. In addition, all forms of institutional support provide for more than one-third of the PhD students in U.S. medical schools. (5) Approximately 24% of enrolled students are international students on temporary or permanent visas. (6) The data obtained from the two surveys of graduate programs within medical schools are relatively consistent, enabling more confidence in the reliability and accuracy of findings presented in this report.

Education, Medical, Graduate↗

Investigative approach to frog gastrocnemius laboratory: potential impact on animal use in teaching laboratories.

With growing concern over the use of animal experimentation in the teaching of physiology, many biology departments are reassessing the use of animal experiments in the teaching lab. However, it may be just as important to assess how animal experimentation is used in the undergraduate teaching laboratory rather than simply assessing if animal experimentation should be used at all. In our study, sophomore-level life science students enrolled in a core organismal biology course undertook a laboratory exercise designed to elucidate properties of muscles and neuromuscular communication following two protocols: 1) a standard demonstrational model wherein students were told to undertake the exercise as a means to understand physiological processes that they had been exposed to previously in lecture or 2) an investigative model wherein the use of the gastrocnemius preparation was a logical next step in an ongoing investigation, the content of which was driven by student-generated hypotheses. We have observed a significant decrease in a number of the negative comments concerning the use of animals in experimentation (25.6 vs. 3.6%) since the implementation of the investigative approach to the laboratory, suggesting that curricular approaches to the use of animals in the teaching laboratory may have an impact on student attitudes concerning animal experimentation.

Animal Welfare↗

Development of computations in bioscience and bioinformatics and its application: review of the Symposium of Computations in Bioinformatics and Bioscience (SCBB06).

The first symposium of computations in bioinformatics and bioscience (SCBB06) was held in Hangzhou, China on June 21-22, 2006. Twenty-six peer-reviewed papers were selected for publication in this special issue of BMC Bioinformatics. These papers cover a broad range of topics including bioinformatics theories, algorithms, applications and tool development. The main technical topics contain gene expression analysis, sequence analysis, genome analysis, phylogenetic analysis, gene function prediction, molecular interaction and system biology, genetics and population study, immune strategy, protein structure prediction and proteomics.

Biological Science Disciplines↗

Meeting report: teaching signal transduction.

In July, 2005, the European Institute of Chemistry and Biology at the campus of the University of Bordeaux, France, hosted a focused week of seminars, workshops, and discussions around the theme of "teaching signal transduction." The purpose of the summer school was to offer both junior and senior university instructors a chance to reflect on the development and delivery of their teaching activities in this area. This was achieved by combining open seminars with restricted access workshops and discussion events. The results suggest ways in which systems biology, information and communication technology, Web-based investigations, and high standard illustrations might be more effectively and efficiently incorporated into modern cell biology courses.

Animals↗

Is biology science?

Yes of course it is, you reply, and so do I. But, are we in a minority in recognizing that the life sciences can be hard science?

Animals↗